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On-line sensor calibration and error modeling using single actuator stimulus

机译:使用单个执行器刺激进行在线传感器校准和误差建模

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We have developed an on-line in-field nonparametric calibration and error modeling approach. The approach employs a single excitation source as the external stimulus to create differential sensor readings. Under very mild assumptions imposed on the calibration functions, error model and the environment model, the technique utilizes the maximal likelihood principle and a nonlinear function minimization to derive both simultaneously the calibration function and the error model of a specified accuracy. Resubstitution is then used in order to establish the interval of confidence. The approach is intrinsically localized and we present two variants: i) one where only pairs of neighboring sensors communicate in order to conduct calibration and construct error model; ii) one where a provably minimum amount of communication is achieved. While the idea of employing external actuators to conduct calibration is generic in the sense that it can be applied to any sensor modality, in this paper we demonstrate and evaluate the approach using traces from light sensors and acoustic signal-based distance measurements recorded by in-field deployed sensors.
机译:我们已经开发了一种在线现场非参数校准和误差建模方法。该方法采用单个激励源作为外部激励,以产生差分传感器读数。在对校准函数,误差模型和环境模型施加非常温和的假设的情况下,该技术利用最大似然原理和非线性函数最小化来同时导出具有指定精度的校准函数和误差模型。然后使用重新替换来建立置信区间。该方法本质上是局部的,我们提出两种变体:i)一种,其中只有成对的相邻传感器进行通信以进行校准和构建误差模型; ii)达到可证明的最小通信量的通信。虽然使用外部执行器进行校准的想法是通用的,因为它可以应用于任何传感器形式,但在本文中,我们将通过使用来自光传感器的迹线以及由内部传感器记录的基于声信号的距离测量值来演示和评估该方法。现场部署的传感器。

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